首页> 外文会议>INMM annual meeting >GAMMA RESPONSE IN A SYNTHETIC APERTURE SYSTEM FOR ROADSIDE DETECTION OF SPECIAL NUCLEAR MATERIAL
【24h】

GAMMA RESPONSE IN A SYNTHETIC APERTURE SYSTEM FOR ROADSIDE DETECTION OF SPECIAL NUCLEAR MATERIAL

机译:特殊核材料路边检测的合成孔径系统中的伽玛响应

获取原文

摘要

The detection and identification of Special Nuclear Material (SNM) sources has become of great concern. This research focused on the development, optimization and assessment of a Synthetic Aperture SNM Detection System (T-SADS system) utilizing 3-D forward and adjoint deterministic Discrete Ordinate (Sn) transport with the PENTRAN code system coupled with Monte Carlo transport simulations using MCNP5. The T-SADS system’s multiple sets of specially moderated neutron and gamma detection blocks placed in series tangential to the travel path of a vehicle, and can detect and rapidly allow for the identification of sources present in a vehicle traveling past the detectors. This paper discusses gamma detection capabilities, and the methodology behind the computational assessment of the T-SADS gamma detection block. Deterministic adjoint transport calculations were performed in order to determine the importance of photons, efficiency, and relative to the Field of View (FOV) of the detector. Background contributions assumed to appear from surrounding sources, cosmic background, and ground scatter were established to determine a minimum Currie-limit necessary to achieve a 95% Probability of Detection and a 5% Probability of False Alarm. Results confirmed the T-SADS system’s ability to detect gamma signatures with 95% confidence for HEU and WGPu sources traveling at speeds of up to 60 miles per hour.
机译:特殊核材料(SNM)来源的检测和识别变得非常关注。本研究专注于利用3-D正向和伴随确定方法离散纵坐标(SN)运输的合成孔径SNM检测系统(T-SADS系统)的开发,优化和评估与使用MCNP5的蒙特卡罗传输模拟耦合的PENTRAN代码系统。 T-SADS系统的多组特殊中子中子和伽马检测块放置在车辆的行进路径中,并且可以检测并迅速允许识别行驶超过探测器的车辆中的源。本文讨论了伽玛检测能力,以及T-SADS伽玛检测块的计算评估背后的方法。执行确定性伴随传输计算,以确定光子,效率和相对于检测器的视野(FOV)的重要性。建立了从周围源,宇宙背景和地面散射出现的背景贡献,以确定实现95%检测概率的最小核心限制和误报的5%概率。结果证实了T-SADS系统检测伽马签名的能力,为Heu和WGPU源的95%信心以每小时最多60英里的速度行驶。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号